Fiber-to-the-Home deployment for last-mile connectivity.
Our FTTH solution provides end-to-end fiber connectivity from the central office to the subscriber. Designed for high scalability and ease of installation, it supports both P2P and PON architectures, ensuring future-proof broadband delivery.
Essential components required for a complete deployment.
144 core outdoor fiber distribution cabinet with IP65 SMC enclosure. Supports ABS module type PLC splitters, splicing and distribution functions. Designed for FTTH access networks and optical cross-connection applications.
288 core outdoor fiber distribution cabinet supports ABS module type PLC splitters, splicing and distribution functions. P65 SMC enclosure. Designed for FTTH access networks and optical cross-connection applications.
288 core outdoor fiber distribution cabinet with IP65 SMC enclosure. Supports rack-mounted PLC splitters, splicing and distribution functions. Designed for FTTH access networks and optical cross-connection applications.
3U 96P fiber optic panel for indoor optical termination. Supports SC or LC adapters, drawer structure, 19-inch rack installation, and stable fiber management for telecom and data center networks.
2U 48P fiber optic panel for indoor optical termination. Supports SC or LC adapters, drawer structure, 19-inch rack installation, and stable fiber management for telecom and data center networks.
1U 24P fiber optic panel for indoor optical termination. Supports SC or LC adapters, drawer structure, 19-inch rack installation, and stable fiber management for telecom and data center networks.
6U server rack cabinet designed for data centers and network equipment installation. Floor mount rack cabinet with 19 inch standard mounting rails. OEM server rack manufacturer with stable supply.
47U server rack cabinet designed for data centers and network equipment installation. Floor mount rack cabinet with 19 inch standard mounting rails. OEM server rack manufacturer with stable supply.
LC Duplex fiber patch cable with 2.0mm OM4 multimode fiber and LC/UPC connectors. Designed for telecom networks and data centers, providing low insertion loss and reliable optical connectivity for high-speed fiber networks.
E2000 fiber patch cable with 2.0mm OS2 singlemode fiber and E2000/APC connectors. Designed for telecom networks and data centers, providing low insertion loss and reliable optical connectivity for high-speed fiber networks.
SC armored fiber patch cable with 2.0mm OS2 singlemode fiber and SC/APC connectors. Designed for telecom networks and data centers, providing low insertion loss and reliable optical connectivity for high-speed fiber networks.
SC fiber patch cable with 2.0mm OS2 singlemode fiber and SC/APC connectors. Designed for telecom networks and data centers, providing low insertion loss and reliable optical connectivity for high-speed fiber networks.
SC fiber fast connector designed for 2.0x1.6mm/2.0x3.0mm/2.0x5.0mm cable. Field installable fiber connector with pre-polished ferrule and factory-tested insertion loss compliant with ANSI / TIA-568.3-D standards.
LC fiber fast connector designed for 2.0x1.6mm/2.0x3.0mm/3.0mm/2.0mm/0.9mm fiber cable. Field installable fiber connector with pre-polished ferrule and factory-tested insertion loss compliant with ANSI / TIA-568.3-D standards.
SC fiber fast connector designed for 2.0x3.0mm/2.0x5.0mm/0.9mm cable. Field installable fiber connector with pre-polished ferrule and factory-tested insertion loss compliant with ANSI / TIA-568.3-D standards.
LC fiber fast connector designed for 1.6x2.0mm/2.0x3.0mm drop cable. Field installable fiber connector with pre-polished ferrule and factory-tested insertion loss compliant with ANSI / TIA-568.3-D standards.
SC fiber fast connector designed for 2.0x3.0mm/2.0x5.0mm/0.9mm cable. Field installable fiber connector with pre-polished ferrule and factory-tested insertion loss compliant with ANSI / TIA-568.3-D standards.
Fiber optic adapter designed for reliable fiber connection. ST fiber adapter simplex OS2 with ≤0.2dB insertion loss, zirconia ceramic sleeve alignment and flange mounting for telecom and FTTH networks.
Fiber optic adapter designed for reliable fiber connection. LC fiber adapter simplex/duplex OS2 with ≤0.2dB insertion loss, zirconia ceramic sleeve alignment and flange mounting for telecom and FTTH networks.
Fiber optic adapter designed for reliable fiber connection. LC-SC fiber adapter simplex OS2 with ≤0.2dB insertion loss, zirconia ceramic sleeve alignment and flange mounting for telecom and FTTH networks.
Fiber optic adapter designed for reliable fiber connection. FC fiber adapter simplex OS2 with ≤0.2dB insertion loss, zirconia ceramic sleeve alignment and flange mounting for telecom and FTTH networks.
Fiber optic adapter designed for reliable fiber connection. SC APC fiber adapter simplex/Duplex OS2 with ≤0.2dB insertion loss, zirconia ceramic sleeve alignment and flange mounting for telecom and FTTH networks.
1:N 2:N Fiber PLC splitter LGX cassette type for FTTH and passive optical networks. Compact LGX metal housing, low insertion loss, G.657A1 fiber, SC/APC or LC/APC support, supplied by a professional PLC splitter manufacturer.
1:N 2:N Fiber PLC splitter ABS module type for FTTH and passive optical networks. Compact ABS housing, low insertion loss, G.657A1 fiber, wide wavelength range, supplied by a professional PLC splitter manufacturer.
1:N 2:N Fiber PLC splitter 1U 19-inch rack mount type with SC/APC connectors or other connectors required by customers for FTTH and data center applications. Stable optical performance, wide wavelength range, RoHS & REACH compliant, supplied by a professional PLC splitter manufacturer.
1:N 2:N PLC fiber splitter bare fiber type for FTTH and passive optical networks. Fusion splicing design, compact structure, G.657A1 fiber, wide wavelength range, supplied by a professional PLC splitter manufacturer.
1:N 2:N Fiber PLC splitter steel tube type for FTTH and passive optical networks. G.657A1 fiber, low insertion loss, wide wavelength range, RoHS & REACH compliant, supplied by a professional PLC splitter manufacturer.
GYTS stranded loose tube light-armored cable for outdoor fiber deployment. PE sheath, PSP moisture protection, and loose tube structure for aerial, duct, and direct buried applications. OEM support from a fiber optic cable manufacturer.
1~4C GJYXCH self-supporting bow type FTTH drop cable with LSZH sheath. Lightweight fiber optic cable with parallel steel wire strength members for FTTH aerial and access network installation. OEM support from a fiber optic cable manufacturer.
1~4C GJXFH Bow Type Drop Cable with LSZH sheath for FTTH access networks. Lightweight fiber optic cable with parallel FRP strength members, low-bend-sensitivity fiber, and OEM support from a fiber optic cable manufacturer.
All Dielectric Self-supporting Aerial fiber optic cable, 2C up to 144C, designed for power communication networks and areas with high-voltage interference or where no communication poles are available. It features 900μm tight buffer, aramid yarn & FRP strength members, PE/AT(Anti-Tracking) jacket, and OEM manufacturing support.
Indoor breakout fiber optic cable 2C up to 18C designed for data centers and FTTH networks. 900um tight buffer, aramid yarn as strength member (FRP), LSZH/PVC jacket and OEM manufacturing support.
2 port fiber optic faceplate for FTTH indoor applications. Compact fiber wall outlet design, supports SC or LC adapters, wall-mounted installation, supplied by a professional fiber optic faceplate manufacturer.
2 Core Fiber wall outlet for FTTH and FTTD indoor applications. Supports SC and LC adapters with 2 fiber cores, featuring compact design and durable PC+ABS housing for reliable fiber termination.
8 port fiber optic faceplate for FTTH indoor applications. Compact fiber wall outlet design, supports SC or LC adapters, wall-mounted installation, supplied by a professional fiber optic faceplate manufacturer.
1 port fiber optic faceplate for FTTH indoor applications. Compact fiber wall outlet design, supports SC or LC adapters, wall-mounted installation, supplied by a professional fiber optic faceplate manufacturer.
4 port fiber optic faceplate for FTTH indoor applications. Compact fiber wall outlet design, supports SC or LC adapters, wall-mounted installation, supplied by a professional fiber optic faceplate manufacturer.
FTTH fiber distribution box with 288 cores for FTTx networks. Galvanized steel enclosure supports splicing, splitting, and patching, with OEM/ODM customization for telecom and fiber infrastructure projects.
288 Core fiber distribution box is made of Galvanized steel with IP53 protection level for FTTH networks. Supports fiber splicing, splitting, and patching. Wall mount/19-inch design supplied by a fiber distribution box manufacturer.
24 port fiber distribution box is made of Galvanized steel for FTTH networks. Supports fiber splicing, splitting, and patching. Wall mount design supplied by a fiber distribution box manufacturer.
96/ 192 port fiber distribution box is made of Galvanized steel with IP53 protection level for FTTH networks. Supports fiber splicing, splitting, and patching. Wall mount design supplied by a fiber distribution box manufacturer.
48 port fiber distribution box with IP65 protection for FTTH networks. Supports fiber splicing, splitting, and patching. Wall or pole mount design supplied by a fiber distribution box manufacturer.
24 port fiber distribution box with IP67 protection for FTTH networks. Supports fiber splicing, splitting, and patching. Wall or pole mount design supplied by a fiber distribution box manufacturer.
16 port fiber distribution box with IP67 protection for FTTH networks. Supports fiber splicing, splitting, and patching. Wall or pole mount design supplied by a fiber distribution box manufacturer.
24 port fiber distribution box for FTTH networks. IP65 protection supports fiber splicing, splitting, and patching, compatible with PLC splitters for flexible indoor and outdoor deployment.
FTTH Fiber Distribution Box with 24 ports and IP65 mechanical sealing for indoor and outdoor fiber distribution. Supports splicing, splitting, and patching, with PLC splitter compatibility and OEM/ODM customization.
6 port fiber distribution box with IP65 protection for FTTH networks. Supports fiber splicing, splitting, and patching. Wall or pole mount design supplied by a fiber distribution box manufacturer.
4 port fiber distribution box with IP65 protection for FTTH networks. Supports fiber splicing, splitting, and patching. Wall or pole mount design supplied by a fiber distribution box manufacturer.
12 port fiber distribution box with IP65 protection for FTTH networks. Supports fiber splicing, splitting, and patching. Wall or pole mount design supplied by a fiber distribution box manufacturer.
24 port fiber distribution box with IP65 protection for FTTH networks. Supports fiber splicing, splitting, and patching. Wall or pole mount design supplied by a fiber distribution box manufacturer.
144-core horizontal fiber joint closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
288-core inline fiber splice closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
144-core inline fiber joint closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
288-core inline fiber joint closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
96-core inline fiber joint closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
288-core inline fiber splice closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
144-core inline fiber joint closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
96-core horizontal inline fiber joint closure for FTTH and backbone networks. IP68 mechanical sealing design, horizontal structure, fiber splice closure configuration, and OEM/ODM manufacturing by a fiber joint closure manufacturer.
192-core fiber joint closure for FTTH and backbone networks. IP68 fiber dome design, ITU-aligned structure, modular capacity, and OEM/ODM branding by a fiber joint closure manufacturer.
960-core fiber joint closure for FTTH and backbone networks. IP68 fiber dome design, ITU-aligned structure, modular capacity, and OEM/ODM branding by a fiber joint closure manufacturer.
576-core fiber joint closure for FTTH and backbone networks. IP68 fiber dome design, ITU-aligned structure, modular capacity, and OEM/ODM branding by a fiber joint closure manufacturer.
384-core fiber joint closure for FTTH and backbone networks. IP68 fiber dome design, ITU-aligned structure, modular capacity, and OEM/ODM branding by a fiber joint closure manufacturer.
192-core fiber joint closure for FTTH and backbone networks. IP68 fiber dome design, ITU-aligned structure, modular capacity, and OEM/ODM branding by a fiber joint closure manufacturer.
144-core fiber joint closure for FTTH and backbone networks. IP68 fiber dome design, ITU-aligned structure, modular capacity, and OEM/ODM branding by a fiber joint closure manufacturer.
48-core fiber joint closure for FTTH and backbone networks. IP68 fiber dome design, ITU-aligned structure, modular capacity, and OEM/ODM branding by a fiber joint closure manufacturer.
Designed for reliability, scalability, and ease of installation, our solution meets international standards and customer requirements.
Download our comprehensive guide or talk to our engineering team about your project requirements.